首页> 外文期刊>The New Phytologist >Comparative analysis of LEA-like 11-24 gene expression and regulation in related plant species within the Linderniaceae that differ in desiccation tolerance
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Comparative analysis of LEA-like 11-24 gene expression and regulation in related plant species within the Linderniaceae that differ in desiccation tolerance

机译:干燥容忍度不同的桔梗内相关植物LEA样11-24基因表达与调控的比较分析

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P>The resurrection plant Craterostigma plantagineum is able to withstand desiccation of its vegetative tissues and is found in areas with variable water availability. The closely related species Lindernia brevidens and Lindernia subracemosa are both endemic to montane rainforests of coastal Africa, but remarkably L. brevidens is tolerant to desiccation.We studied the regulation of the desiccation-related LEA-like 11-24 gene at multiple levels in closely related species in order to investigate the conservation of mechanisms involved in desiccation tolerance.The dehydration-responsive transcription of the LEA-like 11-24 gene is differentially regulated in these plants. Comparison of the LEA-like 11-24 core promoter regions revealed that promoters have different activities, but some functional cis-acting elements are conserved between species. Upon dehydration, LEA-like 11-24 proteins are phosphorylated at different levels and phosphorylation sites are not conserved among the three LEA-like 11-24 proteins.Differences in the regulation of the LEA-like 11-24 gene in the studied plant species appear to be the result of mutations that occurred during evolution. We postulate that L. brevidens will eventually lose the ability to survive vegetative desiccation, given that this trait appears not to be essential for survival.
机译:P>复活植物Craterostigma plantagineum能够抵抗其营养组织的干燥,并且存在于水量可变的地区。紧密相关的物种Lindernia brevidens和Lindernia subracemosa都是非洲沿海山地雨林特有的,但值得注意的是,L。brevidens耐干燥。我们在多个水平上密切研究了与干燥相关的LEA样11-24基因的调控。为了研究与干旱耐受有关的机制的保守性,这些植物中LEA样11-24基因的脱水反应性转录受到不同的调节。比较LEA样的11-24核心启动子区域,发现启动子具有不同的活性,但一些功能性顺式作用元件在物种之间是保守的。脱水后,LEA样11-24蛋白在不同水平上被磷酸化,并且磷酸化位点在这三个LEA样11-24蛋白之间不保守。在所研究植物物种中对LEA样11-24基因的调控差异似乎是进化过程中发生突变的结果。我们假设短小乳杆菌最终将失去在营养干燥中生存的能力,因为这种特性对于生存并不是必需的。

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